Consider the same bomb as before, but now after it explodes. Using the figure below and what we know about conservation of momentum, what will the total momentum [kg.m.s¯1] of the system after the explosion? You do not need to input units with your answer. Hint: Consider the direction of the pieces v1.f vs.f After Explosion m2 m1 V2.f ma m3 V3.f
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- An alpha particle (4He) undergoes an elastic collision with a stationary uranium nucleus (235U) . What percent of the kinetic energy of the alpha particle is transferred to the uranium nucleus? Assume the collision is one- dimensional.1. Consider a bomb of mass M (see figure below) that sits in the middle of space. Initially, the bomb is at rest. What is the initial momentum [kg∙m∙s-1] of the bomb? 2. Consider the same bomb as before, but now after it explodes. Using the figure below and what we know about conservation of momentum, what will the total momentum [kg∙m∙s-1] of the system after the explosion?An object has a mass of 2kg moving to the right with velocity of 12m/s and collides head on with a stationary object whose mass is 6kg. The collision is perfect elastic so what is the final velocity of the 2kg object and if the final velocity of 6kg object is 6m/s to the right? How do i solve and use the formulas in the pic
- What is the equation for change of momentum inelastic collision. I’m not understanding it. I know you multiply mass times velocity and then add the other. But where do you divideWhat is the momentum of a 3kg particle that is traveling at 100 m/s? What is the total momentum after the collision provided that momentum is conserved? Your answerHi, please show full solutions and also explain how you get the answers in physics terms so it's understandable. The correct final answers are written beside too. This is one whole question to be answered. I can't post it separately since it's related. Thank you. 12. A stationary 6.0 kg object blows apart into 3 pieces. The 3 pieces move away from each other on a level plane. A 2.0 kg piece moves away at 3.0 m/s [30.0º W of N] and a 1.0 kg piece moves away at 5.0 m/s [25º N of W].a) Draw a labelled vector diagram of the system after the explosion. Include all known angles, masses and speeds.b) Determine the velocity of the third piece. (3.5 m/s [44º S of E])
- to solve the question please use the equations below. - a mass M moving with a velocity V1i collides with mass 2M moving with a velocity V2i. After the collision the first mass has a velocity V1f. make a diagram of the initial momemtub vectors and final momentum vectors in a (x,y) plane. determine the final velocity of the second mass in (I J K) notation. determine the final velocity of the second mass in terms of speed and angle. V1i=12 i -5J V2i= -3i +2J V1f= 8i +7Jplease help me with this problem. Given: A ball of clay mass M/8 A larger mass as known as Mis attached to a spring with spring constant k. A ball of clay mass "M/8" moves with speed "v" towards a larger mass M. As the a ball of clay hit and sticks on the a larger mass who was initially still. a) What would be the speed of the combination after the collision? b) How much did the spring compressed c) How long did it take for the spring to be compressed due to the collision? K M/8 M3. A ball of mass 25 g traveling east at 12 m/s bounces elastically into a 2nd ball of mass 50 g that is traveling west at 4m/s. What are the final velocities and momentum of each ball? (Hint: either solve the systems of equations for momentum and energysimultaneously or come up with a relative velocity system…)
- nentum Problem Solving CP Day 46 * O Format Tools Add-ons Help Last edit was seconds ago Normal text Comic San. 12 BIUA 4) A steel ball whose mass is 2.0 kg is rolling at a rate of 2.8 m/s. What is its momentum? Looking for: the momentum Given Information: mass = 2.0 kg and rolling at 2.8 m/ Equation: Solution: 5)A marble is rolling at a velocity of 1.5 m/s with a momentum of 0.10 kgm/s. What is its mass? Looking for: mass Given Information: the marble has a velocity of 1.5 m/s and a momentum of 0.10 kgm/s 45% IIIPART 1. Dene impulse and write an equation for it. [0.5 + 0.5]PART 2. What is the dierence between an elastic collision and an inelastic collision? PART 3. State the law of conservation of kinetic energy. PART 4. A cart with mass 600 g moving on a frictionless linear air track at an initial speed of 1.5 m/s un-dergoes an elastic collision with an initially stationary cart of unknown mass. After the collision, the rst cartcontinues in its original direction at 1 m/s.(a) What is the mass of the second cart? (b) What is its speed after impact? (c) What is the speed of the two-cart center of mass?Your physical education teacher throws you a tennis ball at acertain velocity, and you catch it. You are now given the followingchoice: The teacher can throw you a medicine ball (whichis much more massive than the tennis ball) with the samevelocity, the same momentum, or the same kinetic energy asthe tennis ball. Which option would you choose in order tomake the easiest catch, and why?